All terms in GO

Label Id Description
epidermal stem cell homeostasis GO_0036334
Any biological process involved in the maintenance of the steady-state number of epidermal stem cells within a population of cells.
hepatocyte homeostasis GO_0036333
Any biological process involved in the maintenance of the steady-state number of hepatocytes within a population of cells. Hepatocytes are specialized epithelial cells of the liver that are organized into interconnected plates called lobules.
negative regulation of I-kappaB phosphorylation GO_1903720
Any process that stops, prevents or reduces the frequency, rate or extent of I-kappaB phosphorylation.
regulation of I-kappaB phosphorylation GO_1903719
Any process that modulates the frequency, rate or extent of I-kappaB phosphorylation.
placental growth factor receptor activity GO_0036332
Combining with placental growth factor (PlGF) receptor ligand and transmitting the signal across the plasma membrane to initiate a change in cell activity.
lymphocyte adhesion to endothelial cell of high endothelial venule GO_0036339
The attachment of a lymphocyte to an endothelial cell of a high endothelial venule (HEV) via adhesion molecules. A HEV cell is an endothelial cell that is cuboidal, expresses leukocyte-specific receptors, and allows for passage of lymphocytes into bloodstream.
regulation of centriole elongation GO_1903722
Any process that modulates the frequency, rate or extent of centriole elongation.
positive regulation of I-kappaB phosphorylation GO_1903721
Any process that activates or increases the frequency, rate or extent of I-kappaB phosphorylation.
Fas signaling pathway GO_0036337
The series of molecular signals initiated by the binding of a ligand to a Fas receptor on the surface of the cell, and ending with the regulation of a downstream cellular process, e.g. transcription. Fas is a death domain-containing member of the tumor necrosis factor receptor (TNFR) superfamily.
positive regulation of centriole elongation GO_1903724
Any process that activates or increases the frequency, rate or extent of centriole elongation.
dendritic cell migration GO_0036336
The movement of a dendritic cell within or between different tissues and organs of the body.
negative regulation of centriole elongation GO_1903723
Any process that stops, prevents or reduces the frequency, rate or extent of centriole elongation.
luteal cell differentiation GO_1903728
The process in which a relatively unspecialized cell acquires the specialized features of a luteal cell. Large luteal cells develop from granulosa cells. Small luteal cells develop from theca cells.
avascular cornea development in camera-type eye GO_0036331
The progression of an avascular cornea over time, from its formation to the mature structure. Corneal avascularity (the absence of blood vessels in the cornea) is required for optical clarity and optimal vision. Avascular corneas are present in most animals, except Manatees.
cornea development in camera-type eye GO_0061303
The progression of the cornea over time, from its formation to the mature structure. The cornea is the transparent structure that covers the anterior of the eye.
GO_0036330 GO_0036330
lysine biosynthetic process via alpha-aminoadipate and N2-acetyl-alpha-aminoadipate GO_0051976
The chemical reactions and pathways resulting in the formation of lysine via the intermediates alpha-aminoadipic acid and N2-acetyl-alpha-aminoadipate. This pathway of prokaryotic lysine biosynthesis via alpha-aminoadipate was discovered in the hyper-thermophilic Gram-negative eubacterium Thermus thermophilus. The pathway proceeds as follows: alpha-ketoglutarate is converted to homocitrate, which is metabolized to 3-carboxyhex-2-enedioate and then homoisocitrate. This is then decarboxylated to form alpha-ketoadipate, which is then converted to alpha-aminoadipate. This undergoes acetylation, to form N2-acetyl-alpha-aminoadipate, and is then phosphorylated to give N2-acetyl-alpha-aminoadipyl-delta-phosphate. This is converted to N2-acetyl-alpha-aminoadipate semialdehyde, which is then converted to N2-acetyl-L-lysine. A final deacetylation reaction produces L-lysine.
lysine biosynthetic process via alpha-aminoadipate and saccharopine GO_0051975
The chemical reactions and pathways resulting in the formation of lysine via the intermediates alpha-aminoadipic acid and saccharopine. This pathway is used by yeast and fungi to synthesize the essential amino acid L-lysine, and pathway intermediates are often incorporated into secondary metabolic processes. The pathway proceeds as follows: alpha-ketoglutarate is converted to homocitrate, which is metabolized to 3-carboxyhex-2-enedioate and then homoisocitrate. This is then decarboxylated to form alpha-ketoadipate, which is then converted to alpha-aminoadipate. This is then reduced to form alpha-aminoadipate 6-semialdehyde, which is metabolized to saccharopine and finally L-lysine.
lysophospholipid:sodium symporter activity GO_0051978
Enables the directed movement of lysophospholipids from one side of a membrane to the other. A lysophospholipid is a phospholipid that lacks one of its fatty acyl chains; it is an intermediate formed during digestion of dietary and biliary phospholipids.
positive regulation of telomerase activity GO_0051973
Any process that activates or increases the frequency, rate or extent of telomerase activity, the catalysis of the reaction: deoxynucleoside triphosphate + DNA(n) = diphosphate + DNA(n+1).